Modular gas turbine system
US-2019055887-A1 · Feb 21, 2019 · US
US12061044B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-12061044-B2 |
| Application number | US-201917639570-A |
| Country | US |
| Kind code | B2 |
| Filing date | Oct 9, 2019 |
| Priority date | Oct 9, 2019 |
| Publication date | Aug 13, 2024 |
| Grant date | Aug 13, 2024 |
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A natural gas liquefying apparatus is provided. At least a part of a cooling region, in which a precooling unit and a liquefaction unit are arranged, and at least a part of a compression region, in which first and second compressors compressing refrigerants to be used in the precooling unit and the liquefaction unit are arranged, are arranged to be opposed to each other across a long side of a second refrigerant cooler group arrangement region in which a liquefying refrigerant is cooled. A first refrigerant cooler group arrangement region, in which a precooling refrigerant is cooled, is arranged so that a long side of the first refrigerant cooler group arrangement region is opposed to one side of a rectangular region including the compression region, the one side being different from a side of the rectangular region opposed to a long side of the second refrigerant cooler group arrangement region.
Opening claim text (preview).
What is claimed is: 1. A natural gas liquefying apparatus for liquefying natural gas, comprising: a cooling region in which a precooling unit and a liquefaction unit are arranged, the precooling unit including a precooling heat exchanger configured to precool, through use of a precooling refrigerant, the natural gas supplied to the natural gas liquefying apparatus, the liquefaction unit including a heat exchanger for liquefaction configured to liquefy the precooled natural gas through use of a liquefying refrigerant; a compression region in which a first compressor and a second compressor are arranged, the first compressor being configured to compress the precooling refrigerant vaporized by the precooling heat exchanger, the second compressor being configured to compress the liquefying refrigerant vaporized by the heat exchanger for liquefaction; a first refrigerant cooler group arrangement region in which an air-cooled cooler group configured to cool the precooling refrigerant compressed by the first compressor is arrayed and arranged so as to have a rectangular shape having a long side and a short side in top view; and a second refrigerant cooler group arrangement region in which an air-cooled cooler group configured to cool the liquefying refrigerant compressed by the second compressor is arrayed and arranged so as to have a rectangular shape having a long side and a short side in top view, wherein at least a part of the cooling region and at least a part of the compression region are arranged so as to be opposed to each other across the long side of the rectangular shape of the second refrigerant cooler group arrangement region, and wherein the first refrigerant cooler group arrangement region is arranged so that the long side of the first refrigerant cooler group arrangement region is opposed to one side of a rectangular region including the compression region, the one side being different from a side of the rectangular region opposed to the long side of the second refrigerant cooler group arrangement region. 2. The natural gas liquefying apparatus according to claim 1 , wherein the first refrigerant cooler group arrangement region and the second refrigerant cooler group arrangement region are arranged so as to be opposed to each other across the rectangular region. 3. The natural gas liquefying apparatus according to claim 1 , wherein the first refrigerant cooler group arrangement region and the second refrigerant cooler group arrangement region are arranged so that a long side of the first refrigerant cooler group arrangement region and a long side of the second refrigerant cooler group arrangement region are respectively opposed to two sides of the rectangular region that sandwich a same one corner of the rectangular region. 4. The natural gas liquefying apparatus according to claim 1 , wherein a subcooling unit and a third compressor are arranged, the subcooling unit including a subcooling heat exchanger configured to subcool the liquefied natural gas through use of a subcooling refrigerant, the third compressor being configured to compress the subcooling refrigerant vaporized by the subcooling heat exchanger. 5. The natural gas liquefying apparatus according to claim 1 , wherein the first refrigerant cooler group arrangement region is divided into two refrigerant cooler group arrangement regions arrayed and arranged so as to have rectangular shapes in top view, and wherein long sides of the two refrigerant cooler group arrangement regions are oriented in a same direction, and the two refrigerant cooler group arrangement regions are arranged adjacent to each other in a direction of the short sides of the two refrigerant cooler group arrangement regions. 6. The natural gas liquefying apparatus according to claim 1 , wherein the first compressor and the second compressor are configured to be driven by a shared driver.
Natural gas or synthetic natural gas [SNG] · CPC title
Removal of the heat of compression, e.g. within an inter- or afterstage-cooler against an ambient heat sink · CPC title
Multiple compressor casings/strings in parallel, e.g. split arrangement · CPC title
Refrigerant compression by cold or cryogenic suction of the refrigerant gas · CPC title
Gas turbine as the prime mechanical driver · CPC title
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